首页> 外文期刊>Proceedings of the IEE - Part II: Power Engineering >The study of a magnetic inverter for amplification of low-input-power d.c. signals
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The study of a magnetic inverter for amplification of low-input-power d.c. signals

机译:用于放大低输入功率直流电的磁逆变器的研究。信号

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The magnetic inverter is a low-level magnetic amplifying device suitable for the input of multi-stage magnetic amplifiers requiring a high sensitivity. The principle of its operation differs from the conventional magnetic amplifier in that the load current corresponds to the even-harmonic m.m.f.'s which are present in any asymmetrically-excited iron-core system. It is found that a capacitor in parallel with the load can increase the gain by a factor of about 15, but that this occurs at the expense of linearity for large input signals. The inverter can have power gains ranging up to about 1 000 with corresponding time-constants of about 1 sec when operating at 50 c/s, whilst the zero stability is well within 10????????12 watt. The inverter is a valuable addition to measuring and control instruments, and its mode of operation forms an interesting comparison with the theory of the 100% self-excited transductor.
机译:磁逆变器是适合于需要高灵敏度的多级磁放大器的输入的低电平磁放大装置。其工作原理与常规磁放大器的不同之处在于,负载电流对应于在任何不对称激励的铁芯系统中都存在的偶谐波m.m.f.。已经发现,与负载并联的电容器可以将增益提高约15倍,但这是以大输入信号的线性为代价的。当以50 c / s的速度运行时,逆变器的功率增益范围可达约1000,相应的时间常数约为1秒,而零稳定性则在10瓦特12瓦特范围内。逆变器是测量和控制仪器的宝贵补充,其工作模式与100%自励变换器的理论形成了有趣的对比。

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